Intel Processors.
Some comentary are in portuguese(brazilian). In time i will try to translate to english.
PS: sorry about bad english, maybe some (or many) words may be wrong writted
Celeron
- Slot 1 (SEPP):
* core Covington:
-> 266 MHz, FSB 66 MHz, Multiplicador 4.0x, Cache 32KB L1, 2.0 Vcore
-> 300 MHz, FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1, 2.0 Vcore
OBS: the first Celeron, withou L2 cache, 7.5 millions of transistors, 0.25 micron, all with MMX, but is worse than Pentium MMX.
* core Mendocino:
-> 300 MHz (300A), FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1 & 128KB L2
-> 333 MHz, FSB 66 MHz, Multiplicador 5.0x, Cache 32KB L1 & 128KB L2
-> 366 MHz, FSB 66 MHz, Multiplicador 5.5x, Cache 32KB L1 & 128KB L2
-> 400 MHz, FSB 66 MHz, Multiplicador 6.0x, Cache 32KB L1 & 128KB L2
-> 433 MHz, FSB 66 MHz, Multiplicador 6.5x, Cache 32KB L1 & 128KB L2
OBS: All with 2.0 Vcore, 19 millions of transistors and 0.25 micron. Revision "A" with less cache than PII but run full core speed, that accelerated the preformance of celeron´s and became popular in the overclock world.
- Socket 370 (PPGA, FC-PGA, FC-PGA2):
* core Mendocino:
-> 300 MHz (300A), FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1 & 128KB L2
-> 333 MHz, FSB 66 MHz, Multiplicador 5.0x, Cache 32KB L1 & 128KB L2
-> 366 MHz, FSB 66 MHz, Multiplicador 5.5x, Cache 32KB L1 & 128KB L2
-> 400 MHz, FSB 66 MHz, Multiplicador 6.0x, Cache 32KB L1 & 128KB L2
-> 433 MHz, FSB 66 MHz, Multiplicador 6.5x, Cache 32KB L1 & 128KB L2
-> 466 MHz, FSB 66 MHz, Multiplicador 7.0x, Cache 32KB L1 & 128KB L2
-> 500 MHz, FSB 66 MHz, Multiplicador 7.5x, Cache 32KB L1 & 128KB L2
-> 533 MHz, FSB 66 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2
OBS: 2.0 Vcore, 19 millions of transistors and 0.25 micron. Celeron Mendocinos more slowest but excellent on overclock.
* core Coppermine-128:
-> 533 MHz (533A), FSB 66 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2, 1.5 e 1.7 Vcore
-> 566 MHz, FSB 66 MHz, Multiplicador 8.5x, Cache 32KB L1 & 128KB L2, 1.5/1.7/1.75 Vcore
-> 600 MHz, FSB 66 MHz, Multiplicador 9.0x, Cache 32KB L1 & 128KB L2, 1.5/1.7/1.75 Vcore
-> 633 MHz, FSB 66 MHz, Multiplicador 9.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 667 MHz, FSB 66 MHz, Multiplicador 10.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 700 MHz, FSB 66 MHz, Multiplicador 10.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 733 MHz, FSB 66 MHz, Multiplicador 11.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7 Vcore
-> 766 MHz, FSB 66 MHz, Multiplicador 11.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7 Vcore
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 950 MHz, FSB 100 MHz, Multiplicador 9.5x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
OBS: SSE, same core Coppermine used by PIII, except by half cache L2 desabilited. knowed by "PIII capped". All with 28.1 millions of transistors and 0.18 micron.
* core Tualatin:
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2, 1.475 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1200 MHz, FSB 100 MHz, Multiplicador 12.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1300 MHz, FSB 100 MHz, Multiplicador 13.0x, Cache 32KB L1 & 256KB L2, 1.5 Vcore
-> 1400 MHz, FSB 100 MHz, Multiplicador 14.0x, Cache 32KB L1 & 256KB L2, 1.5 Vcore
OBS: Instrução SSE, com 256KB L2 cache e 100 MHz FSB tornou o Celeron Tualatin igual um PIII Coppermine, provavelmente o melhor processador custo/performance que já criaram. Todos com 44 milhões de transistores e 0.13 micron.
Pentium III
- Slot 1 (SECC, SECC2):
* núcleo Katmai:
-> 450 MHz, FSB 100 MHz, Multiplicador 4.5x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 500 MHz, FSB 100 MHz, Multiplicador 5.0x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 512KB L2, 2.05 Vcore
OBS: primeiros PIII, primeiros CPU com instrução SSE, baseado no mesmo núcleo Katmai dos PII. Performance bem pouca maior sobre as aplicações non-SSE do PII. Todos com 9.5 milhões de transistores e 0.25 micron.
* núcleo Katmai B:
-> 533 MHz (533B), FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 600 MHz (600B), FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 512KB L2, 2.05 Vcore
OBS: versão "B" dos PIII no núcleo Katmai, extra velocidade no FSB ajudou o PIII a se sobresair na performance dos PII's. Todos com 9.5 milhões de transistores e 0.25 micron.
* núcleo Coppermine E:
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2
-> 650 MHz, FSB 100 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2
-> 700 MHz, FSB 100 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2
-> 750 MHz, FSB 100 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 256KB L2
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2
-> 950 MHz, FSB 100 MHz, Multiplicador 9.5x, Cache 32KB L1 & 256KB L2
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
OBS: Todos com 1.65 Vcore (exceção 1000 MHz). Núcleo Coppermine significa cache L2 com 256KB e "full-speed" e arquitetura menor com 0.18 micron e 28 milhões de transistores, o "verdadeiro" PIII.
* núcleo Coppermine EB:
-> 533 MHz, FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 600 MHz, FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 667 MHz, FSB 133 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 733 MHz, FSB 133 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 800 MHz, FSB 133 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.8 Vcore
OBS: "EB" realmente puxou os limites do Slot1, não são muitas placas-mãe de Slot1 que suportam "EB" PIII's.
- Socket 370 (FC-PGA, FC-PGA2):
* núcleo Coppermine E:
-> 500 MHz, FSB 100 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.6 Vcore
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.6/1.65/1.7 Vcore
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 650 MHz, FSB 100 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 700 MHz, FSB 100 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 750 MHz, FSB 100 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.6 Vcore
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: "flip-chip design" permitiu a Intel a aposentar o Slot1 e retornar aos sockets, muito mais eficientes e muito melhores para os PIII. Socket370 PIII's são ótimos overclockers. Todos com 28 milhões de transistores e 0.28 micron.
* núcleo Coppermine EB:
-> 533 MHz, FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 600 MHz, FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 667 MHz, FSB 133 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 733 MHz, FSB 133 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 800 MHz, FSB 133 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.7/1.75/1.76 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: extrema boa performance, 1 GHz puxou o núcleo Coppermine para o final da sua esperança. Todos com 28 milhões de transistores e 0.28 micron.
* núcleo Coppermine-T:
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: Aparentemente idêntico aos Coppermine EB...única diferença é que todos possuem 1.75 Vcore!
Some comentary are in portuguese(brazilian). In time i will try to translate to english.
PS: sorry about bad english, maybe some (or many) words may be wrong writted

Celeron
- Slot 1 (SEPP):
* core Covington:
-> 266 MHz, FSB 66 MHz, Multiplicador 4.0x, Cache 32KB L1, 2.0 Vcore
-> 300 MHz, FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1, 2.0 Vcore
OBS: the first Celeron, withou L2 cache, 7.5 millions of transistors, 0.25 micron, all with MMX, but is worse than Pentium MMX.
* core Mendocino:
-> 300 MHz (300A), FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1 & 128KB L2
-> 333 MHz, FSB 66 MHz, Multiplicador 5.0x, Cache 32KB L1 & 128KB L2
-> 366 MHz, FSB 66 MHz, Multiplicador 5.5x, Cache 32KB L1 & 128KB L2
-> 400 MHz, FSB 66 MHz, Multiplicador 6.0x, Cache 32KB L1 & 128KB L2
-> 433 MHz, FSB 66 MHz, Multiplicador 6.5x, Cache 32KB L1 & 128KB L2
OBS: All with 2.0 Vcore, 19 millions of transistors and 0.25 micron. Revision "A" with less cache than PII but run full core speed, that accelerated the preformance of celeron´s and became popular in the overclock world.
- Socket 370 (PPGA, FC-PGA, FC-PGA2):
* core Mendocino:
-> 300 MHz (300A), FSB 66 MHz, Multiplicador 4.5x, Cache 32KB L1 & 128KB L2
-> 333 MHz, FSB 66 MHz, Multiplicador 5.0x, Cache 32KB L1 & 128KB L2
-> 366 MHz, FSB 66 MHz, Multiplicador 5.5x, Cache 32KB L1 & 128KB L2
-> 400 MHz, FSB 66 MHz, Multiplicador 6.0x, Cache 32KB L1 & 128KB L2
-> 433 MHz, FSB 66 MHz, Multiplicador 6.5x, Cache 32KB L1 & 128KB L2
-> 466 MHz, FSB 66 MHz, Multiplicador 7.0x, Cache 32KB L1 & 128KB L2
-> 500 MHz, FSB 66 MHz, Multiplicador 7.5x, Cache 32KB L1 & 128KB L2
-> 533 MHz, FSB 66 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2
OBS: 2.0 Vcore, 19 millions of transistors and 0.25 micron. Celeron Mendocinos more slowest but excellent on overclock.
* core Coppermine-128:
-> 533 MHz (533A), FSB 66 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2, 1.5 e 1.7 Vcore
-> 566 MHz, FSB 66 MHz, Multiplicador 8.5x, Cache 32KB L1 & 128KB L2, 1.5/1.7/1.75 Vcore
-> 600 MHz, FSB 66 MHz, Multiplicador 9.0x, Cache 32KB L1 & 128KB L2, 1.5/1.7/1.75 Vcore
-> 633 MHz, FSB 66 MHz, Multiplicador 9.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 667 MHz, FSB 66 MHz, Multiplicador 10.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 700 MHz, FSB 66 MHz, Multiplicador 10.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 733 MHz, FSB 66 MHz, Multiplicador 11.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7 Vcore
-> 766 MHz, FSB 66 MHz, Multiplicador 11.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7 Vcore
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 128KB L2, 1.65/1.7/1.75 Vcore
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 950 MHz, FSB 100 MHz, Multiplicador 9.5x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 128KB L2, 1.75 Vcore
OBS: SSE, same core Coppermine used by PIII, except by half cache L2 desabilited. knowed by "PIII capped". All with 28.1 millions of transistors and 0.18 micron.
* core Tualatin:
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2, 1.475 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1200 MHz, FSB 100 MHz, Multiplicador 12.0x, Cache 32KB L1 & 256KB L2, 1.475/1.5 Vcore
-> 1300 MHz, FSB 100 MHz, Multiplicador 13.0x, Cache 32KB L1 & 256KB L2, 1.5 Vcore
-> 1400 MHz, FSB 100 MHz, Multiplicador 14.0x, Cache 32KB L1 & 256KB L2, 1.5 Vcore
OBS: Instrução SSE, com 256KB L2 cache e 100 MHz FSB tornou o Celeron Tualatin igual um PIII Coppermine, provavelmente o melhor processador custo/performance que já criaram. Todos com 44 milhões de transistores e 0.13 micron.
Pentium III
- Slot 1 (SECC, SECC2):
* núcleo Katmai:
-> 450 MHz, FSB 100 MHz, Multiplicador 4.5x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 500 MHz, FSB 100 MHz, Multiplicador 5.0x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 512KB L2, 2.05 Vcore
OBS: primeiros PIII, primeiros CPU com instrução SSE, baseado no mesmo núcleo Katmai dos PII. Performance bem pouca maior sobre as aplicações non-SSE do PII. Todos com 9.5 milhões de transistores e 0.25 micron.
* núcleo Katmai B:
-> 533 MHz (533B), FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 512KB L2, 2.0 Vcore
-> 600 MHz (600B), FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 512KB L2, 2.05 Vcore
OBS: versão "B" dos PIII no núcleo Katmai, extra velocidade no FSB ajudou o PIII a se sobresair na performance dos PII's. Todos com 9.5 milhões de transistores e 0.25 micron.
* núcleo Coppermine E:
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2
-> 650 MHz, FSB 100 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2
-> 700 MHz, FSB 100 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2
-> 750 MHz, FSB 100 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 256KB L2
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2
-> 950 MHz, FSB 100 MHz, Multiplicador 9.5x, Cache 32KB L1 & 256KB L2
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
OBS: Todos com 1.65 Vcore (exceção 1000 MHz). Núcleo Coppermine significa cache L2 com 256KB e "full-speed" e arquitetura menor com 0.18 micron e 28 milhões de transistores, o "verdadeiro" PIII.
* núcleo Coppermine EB:
-> 533 MHz, FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 600 MHz, FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 667 MHz, FSB 133 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 733 MHz, FSB 133 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 800 MHz, FSB 133 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.8 Vcore
OBS: "EB" realmente puxou os limites do Slot1, não são muitas placas-mãe de Slot1 que suportam "EB" PIII's.
- Socket 370 (FC-PGA, FC-PGA2):
* núcleo Coppermine E:
-> 500 MHz, FSB 100 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.6 Vcore
-> 550 MHz, FSB 100 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.6/1.65/1.7 Vcore
-> 600 MHz, FSB 100 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 650 MHz, FSB 100 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 700 MHz, FSB 100 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 750 MHz, FSB 100 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 800 MHz, FSB 100 MHz, Multiplicador 8.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 850 MHz, FSB 100 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.6 Vcore
-> 900 MHz, FSB 100 MHz, Multiplicador 9.0x, Cache 32KB L1 & 256KB L2, 1.7 Vcore
-> 1000 MHz, FSB 100 MHz, Multiplicador 10.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1100 MHz, FSB 100 MHz, Multiplicador 11.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: "flip-chip design" permitiu a Intel a aposentar o Slot1 e retornar aos sockets, muito mais eficientes e muito melhores para os PIII. Socket370 PIII's são ótimos overclockers. Todos com 28 milhões de transistores e 0.28 micron.
* núcleo Coppermine EB:
-> 533 MHz, FSB 133 MHz, Multiplicador 4.0x, Cache 32KB L1 & 256KB L2, 1.65 Vcore
-> 600 MHz, FSB 133 MHz, Multiplicador 4.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 667 MHz, FSB 133 MHz, Multiplicador 5.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7 Vcore
-> 733 MHz, FSB 133 MHz, Multiplicador 5.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 800 MHz, FSB 133 MHz, Multiplicador 6.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.65/1.7/1.75 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.7/1.75/1.76 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: extrema boa performance, 1 GHz puxou o núcleo Coppermine para o final da sua esperança. Todos com 28 milhões de transistores e 0.28 micron.
* núcleo Coppermine-T:
-> 866 MHz, FSB 133 MHz, Multiplicador 6.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 933 MHz, FSB 133 MHz, Multiplicador 7.0x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1000 MHz, FSB 133 MHz, Multiplicador 7.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
-> 1133 MHz, FSB 133 MHz, Multiplicador 8.5x, Cache 32KB L1 & 256KB L2, 1.75 Vcore
OBS: Aparentemente idêntico aos Coppermine EB...única diferença é que todos possuem 1.75 Vcore!